首页> 外文会议>International Conference on Nuclear Engineering >THREE-DIMENSIONAL STUDY OF SINGLE BUBBLE DYNAMICS AND THE SURROUNDING FLOW FIELD IN A SMALL DIAMETER PIPE BY USING PARTICLE TRACKING VELOCIMETRY
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THREE-DIMENSIONAL STUDY OF SINGLE BUBBLE DYNAMICS AND THE SURROUNDING FLOW FIELD IN A SMALL DIAMETER PIPE BY USING PARTICLE TRACKING VELOCIMETRY

机译:用粒子跟踪速度法测速小直径管中单泡动力学和周围流动场的三维研究

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The capabilities of the particle tracking velocimetry technique to perform accurate measurements in two-phase flows are addressed in this paper. A hybrid of the particle tracking velocimetry and a shadow particle tracking velocimetry was employed to perform measurements of instantaneous velocity fields of the two components of a two-phase flow, in a Lagrangian approach. As an application of this hybrid technique, the flow field generated by a single air bubble freely rising in stagnant water in a small diameter pipe was described both qualitatively and quantitatively. Ensemble averaged mean and turbulent flow field, and the vorticity distribution were computed. The ensemble average operation was performed under the condition that the bubbles had a similar rising trajectory. A study of the shape, trajectory, and rocking motion of the rising bubble was also considered.
机译:本文解决了粒子跟踪速度技术,以在两相流中执行精确测量的能力。采用颗粒跟踪速度和阴影粒子跟踪速度的混合动力,以在拉格朗日方法中对两相流动的两个部件的瞬时速度场进行测量。作为该混合技术的应用,定性和定量地描述了由小直径管中停滞水自由上升的单个气泡产生的流场。集合平均平均和湍流流场,计算涡流分布。在气泡具有相似的上升轨迹的条件下进行集合平均操作。还考虑了对上升泡沫的形状,轨迹和摇摆运动的研究。

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